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Hallmon, Augustus W.; Myllykangas, Susan A.; Nagata, Shinichi – Schole: A Journal of Leisure Studies and Recreation Education, 2021
Myllykangas postulated that students studying various careers within the parks and recreation profession might prefer a certain learning style, which is, often the case, different from the teaching style used by the faculty. In order to address learning styles of students, it is essential to be able to adapt to the learning styles of each student…
Descriptors: Teaching Methods, Parks, Recreation, Leisure Time
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Bennett, Delancy H.S.; Raymond, Mary Anne – Marketing Education Review, 2019
Building upon existing experiential learning processes, this paper presents an extended experimental learning framework for creating Corporate Engagement Programs (CEPs). The research answers the AACSB call for "engagement programs" which leverage passive and active pedagogies to connect in-class-lessons to engagement activities with…
Descriptors: Theory Practice Relationship, Experiential Learning, Learning Processes, Teaching Methods
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Karkoub, Mansour; Yang, Chun-Lin; Karkoub, Wael; Raslan, Moustafa – Advances in Engineering Education, 2020
For many years, educators have been developing tools and techniques to improve the learning process in higher education; however, the vast majority of these do not focus directly on deep learning. In this work, an innovative teaching/learning tool is presented which focuses on deep learning of some engineering skills and principles. The tool is…
Descriptors: Engineering Education, Learning Processes, Higher Education, Teaching Methods
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Prescott, Carolyn; And Others – Educational Leadership, 1996
The Applications in Biology/Chemistry (ABC) curriculum is a real-world approach designed for the middle 50% of secondary students who may not learn in a predominantly abstract way. Stressing contextual and cooperative learning, ABC features 10 laboratory exercises and other hands-on, problem-solving activities involving visits to job sites and…
Descriptors: Biology, Chemistry, Cognitive Style, Context Effect
Tomlinson-Keasey, C.; And Others – 1978
If academic material is to have the same force as social and personal experience at the college level, then educators need to allow more experiences on the academic road. That experiences are becoming more important is evidenced by the emergence of competency-based programs, experimental teaching programs, cluster colleges, and experiential…
Descriptors: Abstract Reasoning, Cognitive Processes, Cognitive Style, College Curriculum
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Steele, Ruth – Holistic Education Review, 1988
Describes the Jefferson County Open High School (Colorado) in suburban Denver, a public alternative secondary school of choice devoted to developing student potential through emphasis on individualization and self-directed learning. Explores the school's programs and describes the educational philosophy which recognizes individual rates of…
Descriptors: Cognitive Style, Educational Philosophy, Experiential Learning, High Schools
Research for Better Schools, Inc., Philadelphia, PA. – 1978
This document contains an overview of the Research for Better Schools (RBS) model for experience-based career education (EBCE). (Descriptions of two other EBCE models are included in ERIC documents CE 018 446 and CE 018 447.) Divided into eight sections, this document highlights some of the important features of the model and includes excerpts of…
Descriptors: Academic Education, Career Development, Career Education, Career Exploration
de Vry, Janet R.; Hyde, Paul – CAUSE/EFFECT, 1997
Describes development and design of the University of Delaware's faculty development program, which uses a variety of technology applications and resources to encourage individual exploration of technology, develop teamwork skills, adapt to fast-changing content, accommodate diverse learning styles, use asynchronous communication options, provide…
Descriptors: Classroom Techniques, Cognitive Style, College Faculty, Computer Uses in Education
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Sanders, Mark – School Science and Mathematics, 1994
Discusses the Technology, Science, Mathematics Integration Project's technological problem-solving method, briefly describes 15 activities and the corresponding technology, science, and mathematics content involved (including 1 detailed example), and proposes a general structure of the activities and research in support of this approach. (MKR)
Descriptors: Alternative Assessment, Cognitive Style, Competition, Constructivism (Learning)